CN

Liang Luo

Professor

Supervisor of Doctorate Candidates

Supervisor of Master's Candidates

Gender:Male

Status:Employed

Department:School of Life Science and Technology

Education Level:Postgraduate (Doctoral)

Discipline:Biomedical Engineering

Details >

Paper Publications

Polydiacetylene-based ultrastrong bioorthogonal Raman probes for targeted live-cell Raman imaging

Release time:2020-12-24 Hits:

Indexed by:Journal paper

Journal:Nature Communications

Included Journals:SCI

Volume:11

Issue:1

Page Number:81

ISSN No.:2041-1723

DOI number:10.1038/s41467-019-13784-0

Date of Publication:2020-01-03

Impact Factor:12.121

Abstract:Live-cell Raman imaging based on bioorthogonal Raman probes with distinct signals in the cellular Raman-silent region (1800-2800 cm-1) has attracted great interest in recent years. We report here a class of water-soluble and biocompatible polydiacetylenes with intrinsic ultrastrong alkyne Raman signals that locate in this region for organelle-targeting live-cell Raman imaging. Using a host-guest topochemical polymerization strategy, we have synthesized a water-soluble and functionalizable master polydiacetylene, namely poly(deca-4,6-diynedioic acid) (PDDA), which possesses significantly enhanced (up to ~104 fold) alkyne vibration compared to conventional alkyne Raman probes. In addition, PDDA can be used as a general platform for multi-functional ultrastrong Raman probes. We achieve high quality live-cell stimulated Raman scattering imaging on the basis of modified PDDA. The polydiacetylene-based Raman probes represent ultrastrong intrinsic Raman imaging agents in the Raman-silent region (without any Raman enhancer), and the flexible functionalization of this material holds great promise for its potential diverse applications.

Links to published journals:https://pubmed.ncbi.nlm.nih.gov/31900403/

Copyright © 2017 Huazhong University of Science & Technology

Click:times | The Founding Time:.. | The Last Update Time:.. | MOBILE Version